1 /* 2 * Copyright 2017 Advanced Micro Devices, Inc. 3 * 4 * Permission is hereby granted, free of charge, to any person obtaining a 5 * copy of this software and associated documentation files (the "Software"), 6 * to deal in the Software without restriction, including without limitation 7 * the rights to use, copy, modify, merge, publish, distribute, sublicense, 8 * and/or sell copies of the Software, and to permit persons to whom the 9 * Software is furnished to do so, subject to the following conditions: 10 * 11 * The above copyright notice and this permission notice shall be included in 12 * all copies or substantial portions of the Software. 13 * 14 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 15 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 16 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL 17 * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR 18 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, 19 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR 20 * OTHER DEALINGS IN THE SOFTWARE. 21 * 22 */ 23 #include "amdgpu_ids.h" 24 25 #include <linux/idr.h> 26 #include <linux/dma-fence-array.h> 27 28 29 #include "amdgpu.h" 30 #include "amdgpu_trace.h" 31 32 /* 33 * PASID manager 34 * 35 * PASIDs are global address space identifiers that can be shared 36 * between the GPU, an IOMMU and the driver. VMs on different devices 37 * may use the same PASID if they share the same address 38 * space. Therefore PASIDs are allocated using a global IDA. VMs are 39 * looked up from the PASID per amdgpu_device. 40 */ 41 static DEFINE_IDA(amdgpu_pasid_ida); 42 43 /* Helper to free pasid from a fence callback */ 44 struct amdgpu_pasid_cb { 45 struct dma_fence_cb cb; 46 u32 pasid; 47 }; 48 49 /** 50 * amdgpu_pasid_alloc - Allocate a PASID 51 * @bits: Maximum width of the PASID in bits, must be at least 1 52 * 53 * Allocates a PASID of the given width while keeping smaller PASIDs 54 * available if possible. 55 * 56 * Returns a positive integer on success. Returns %-EINVAL if bits==0. 57 * Returns %-ENOSPC if no PASID was available. Returns %-ENOMEM on 58 * memory allocation failure. 59 */ 60 int amdgpu_pasid_alloc(unsigned int bits) 61 { 62 int pasid = -EINVAL; 63 64 for (bits = min(bits, 31U); bits > 0; bits--) { 65 pasid = ida_simple_get(&amdgpu_pasid_ida, 66 1U << (bits - 1), 1U << bits, 67 GFP_KERNEL); 68 if (pasid != -ENOSPC) 69 break; 70 } 71 72 if (pasid >= 0) 73 trace_amdgpu_pasid_allocated(pasid); 74 75 return pasid; 76 } 77 78 /** 79 * amdgpu_pasid_free - Free a PASID 80 * @pasid: PASID to free 81 */ 82 void amdgpu_pasid_free(u32 pasid) 83 { 84 trace_amdgpu_pasid_freed(pasid); 85 ida_simple_remove(&amdgpu_pasid_ida, pasid); 86 } 87 88 static void amdgpu_pasid_free_cb(struct dma_fence *fence, 89 struct dma_fence_cb *_cb) 90 { 91 struct amdgpu_pasid_cb *cb = 92 container_of(_cb, struct amdgpu_pasid_cb, cb); 93 94 amdgpu_pasid_free(cb->pasid); 95 dma_fence_put(fence); 96 kfree(cb); 97 } 98 99 /** 100 * amdgpu_pasid_free_delayed - free pasid when fences signal 101 * 102 * @resv: reservation object with the fences to wait for 103 * @pasid: pasid to free 104 * 105 * Free the pasid only after all the fences in resv are signaled. 106 */ 107 void amdgpu_pasid_free_delayed(struct dma_resv *resv, 108 u32 pasid) 109 { 110 struct dma_fence *fence, **fences; 111 struct amdgpu_pasid_cb *cb; 112 unsigned count; 113 int r; 114 115 r = dma_resv_get_fences(resv, true, &count, &fences); 116 if (r) 117 goto fallback; 118 119 if (count == 0) { 120 amdgpu_pasid_free(pasid); 121 return; 122 } 123 124 if (count == 1) { 125 fence = fences[0]; 126 kfree(fences); 127 } else { 128 uint64_t context = dma_fence_context_alloc(1); 129 struct dma_fence_array *array; 130 131 array = dma_fence_array_create(count, fences, context, 132 1, false); 133 if (!array) { 134 kfree(fences); 135 goto fallback; 136 } 137 fence = &array->base; 138 } 139 140 cb = kmalloc(sizeof(*cb), GFP_KERNEL); 141 if (!cb) { 142 /* Last resort when we are OOM */ 143 dma_fence_wait(fence, false); 144 dma_fence_put(fence); 145 amdgpu_pasid_free(pasid); 146 } else { 147 cb->pasid = pasid; 148 if (dma_fence_add_callback(fence, &cb->cb, 149 amdgpu_pasid_free_cb)) 150 amdgpu_pasid_free_cb(fence, &cb->cb); 151 } 152 153 return; 154 155 fallback: 156 /* Not enough memory for the delayed delete, as last resort 157 * block for all the fences to complete. 158 */ 159 dma_resv_wait_timeout(resv, true, false, MAX_SCHEDULE_TIMEOUT); 160 amdgpu_pasid_free(pasid); 161 } 162 163 /* 164 * VMID manager 165 * 166 * VMIDs are a per VMHUB identifier for page tables handling. 167 */ 168 169 /** 170 * amdgpu_vmid_had_gpu_reset - check if reset occured since last use 171 * 172 * @adev: amdgpu_device pointer 173 * @id: VMID structure 174 * 175 * Check if GPU reset occured since last use of the VMID. 176 */ 177 bool amdgpu_vmid_had_gpu_reset(struct amdgpu_device *adev, 178 struct amdgpu_vmid *id) 179 { 180 return id->current_gpu_reset_count != 181 atomic_read(&adev->gpu_reset_counter); 182 } 183 184 /** 185 * amdgpu_vmid_grab_idle - grab idle VMID 186 * 187 * @vm: vm to allocate id for 188 * @ring: ring we want to submit job to 189 * @sync: sync object where we add dependencies 190 * @idle: resulting idle VMID 191 * 192 * Try to find an idle VMID, if none is idle add a fence to wait to the sync 193 * object. Returns -ENOMEM when we are out of memory. 194 */ 195 static int amdgpu_vmid_grab_idle(struct amdgpu_vm *vm, 196 struct amdgpu_ring *ring, 197 struct amdgpu_sync *sync, 198 struct amdgpu_vmid **idle) 199 { 200 struct amdgpu_device *adev = ring->adev; 201 unsigned vmhub = ring->funcs->vmhub; 202 struct amdgpu_vmid_mgr *id_mgr = &adev->vm_manager.id_mgr[vmhub]; 203 struct dma_fence **fences; 204 unsigned i; 205 int r; 206 207 if (!dma_fence_is_signaled(ring->vmid_wait)) 208 return amdgpu_sync_fence(sync, ring->vmid_wait); 209 210 fences = kmalloc_array(id_mgr->num_ids, sizeof(void *), GFP_KERNEL); 211 if (!fences) 212 return -ENOMEM; 213 214 /* Check if we have an idle VMID */ 215 i = 0; 216 list_for_each_entry((*idle), &id_mgr->ids_lru, list) { 217 /* Don't use per engine and per process VMID at the same time */ 218 struct amdgpu_ring *r = adev->vm_manager.concurrent_flush ? 219 NULL : ring; 220 221 fences[i] = amdgpu_sync_peek_fence(&(*idle)->active, r); 222 if (!fences[i]) 223 break; 224 ++i; 225 } 226 227 /* If we can't find a idle VMID to use, wait till one becomes available */ 228 if (&(*idle)->list == &id_mgr->ids_lru) { 229 u64 fence_context = adev->vm_manager.fence_context + ring->idx; 230 unsigned seqno = ++adev->vm_manager.seqno[ring->idx]; 231 struct dma_fence_array *array; 232 unsigned j; 233 234 *idle = NULL; 235 for (j = 0; j < i; ++j) 236 dma_fence_get(fences[j]); 237 238 array = dma_fence_array_create(i, fences, fence_context, 239 seqno, true); 240 if (!array) { 241 for (j = 0; j < i; ++j) 242 dma_fence_put(fences[j]); 243 kfree(fences); 244 return -ENOMEM; 245 } 246 247 r = amdgpu_sync_fence(sync, &array->base); 248 dma_fence_put(ring->vmid_wait); 249 ring->vmid_wait = &array->base; 250 return r; 251 } 252 kfree(fences); 253 254 return 0; 255 } 256 257 /** 258 * amdgpu_vmid_grab_reserved - try to assign reserved VMID 259 * 260 * @vm: vm to allocate id for 261 * @ring: ring we want to submit job to 262 * @sync: sync object where we add dependencies 263 * @fence: fence protecting ID from reuse 264 * @job: job who wants to use the VMID 265 * @id: resulting VMID 266 * 267 * Try to assign a reserved VMID. 268 */ 269 static int amdgpu_vmid_grab_reserved(struct amdgpu_vm *vm, 270 struct amdgpu_ring *ring, 271 struct amdgpu_sync *sync, 272 struct dma_fence *fence, 273 struct amdgpu_job *job, 274 struct amdgpu_vmid **id) 275 { 276 struct amdgpu_device *adev = ring->adev; 277 unsigned vmhub = ring->funcs->vmhub; 278 uint64_t fence_context = adev->fence_context + ring->idx; 279 bool needs_flush = vm->use_cpu_for_update; 280 uint64_t updates = amdgpu_vm_tlb_seq(vm); 281 int r; 282 283 *id = vm->reserved_vmid[vmhub]; 284 if ((*id)->owner != vm->immediate.fence_context || 285 (*id)->pd_gpu_addr != job->vm_pd_addr || 286 (*id)->flushed_updates < updates || 287 !(*id)->last_flush || 288 ((*id)->last_flush->context != fence_context && 289 !dma_fence_is_signaled((*id)->last_flush))) { 290 struct dma_fence *tmp; 291 292 /* Don't use per engine and per process VMID at the same time */ 293 if (adev->vm_manager.concurrent_flush) 294 ring = NULL; 295 296 /* to prevent one context starved by another context */ 297 (*id)->pd_gpu_addr = 0; 298 tmp = amdgpu_sync_peek_fence(&(*id)->active, ring); 299 if (tmp) { 300 *id = NULL; 301 return amdgpu_sync_fence(sync, tmp); 302 } 303 needs_flush = true; 304 } 305 306 /* Good we can use this VMID. Remember this submission as 307 * user of the VMID. 308 */ 309 r = amdgpu_sync_fence(&(*id)->active, fence); 310 if (r) 311 return r; 312 313 (*id)->flushed_updates = updates; 314 job->vm_needs_flush = needs_flush; 315 return 0; 316 } 317 318 /** 319 * amdgpu_vmid_grab_used - try to reuse a VMID 320 * 321 * @vm: vm to allocate id for 322 * @ring: ring we want to submit job to 323 * @sync: sync object where we add dependencies 324 * @fence: fence protecting ID from reuse 325 * @job: job who wants to use the VMID 326 * @id: resulting VMID 327 * 328 * Try to reuse a VMID for this submission. 329 */ 330 static int amdgpu_vmid_grab_used(struct amdgpu_vm *vm, 331 struct amdgpu_ring *ring, 332 struct amdgpu_sync *sync, 333 struct dma_fence *fence, 334 struct amdgpu_job *job, 335 struct amdgpu_vmid **id) 336 { 337 struct amdgpu_device *adev = ring->adev; 338 unsigned vmhub = ring->funcs->vmhub; 339 struct amdgpu_vmid_mgr *id_mgr = &adev->vm_manager.id_mgr[vmhub]; 340 uint64_t fence_context = adev->fence_context + ring->idx; 341 uint64_t updates = amdgpu_vm_tlb_seq(vm); 342 int r; 343 344 job->vm_needs_flush = vm->use_cpu_for_update; 345 346 /* Check if we can use a VMID already assigned to this VM */ 347 list_for_each_entry_reverse((*id), &id_mgr->ids_lru, list) { 348 bool needs_flush = vm->use_cpu_for_update; 349 350 /* Check all the prerequisites to using this VMID */ 351 if ((*id)->owner != vm->immediate.fence_context) 352 continue; 353 354 if ((*id)->pd_gpu_addr != job->vm_pd_addr) 355 continue; 356 357 if (!(*id)->last_flush || 358 ((*id)->last_flush->context != fence_context && 359 !dma_fence_is_signaled((*id)->last_flush))) 360 needs_flush = true; 361 362 if ((*id)->flushed_updates < updates) 363 needs_flush = true; 364 365 if (needs_flush && !adev->vm_manager.concurrent_flush) 366 continue; 367 368 /* Good, we can use this VMID. Remember this submission as 369 * user of the VMID. 370 */ 371 r = amdgpu_sync_fence(&(*id)->active, fence); 372 if (r) 373 return r; 374 375 (*id)->flushed_updates = updates; 376 job->vm_needs_flush |= needs_flush; 377 return 0; 378 } 379 380 *id = NULL; 381 return 0; 382 } 383 384 /** 385 * amdgpu_vmid_grab - allocate the next free VMID 386 * 387 * @vm: vm to allocate id for 388 * @ring: ring we want to submit job to 389 * @sync: sync object where we add dependencies 390 * @fence: fence protecting ID from reuse 391 * @job: job who wants to use the VMID 392 * 393 * Allocate an id for the vm, adding fences to the sync obj as necessary. 394 */ 395 int amdgpu_vmid_grab(struct amdgpu_vm *vm, struct amdgpu_ring *ring, 396 struct amdgpu_sync *sync, struct dma_fence *fence, 397 struct amdgpu_job *job) 398 { 399 struct amdgpu_device *adev = ring->adev; 400 unsigned vmhub = ring->funcs->vmhub; 401 struct amdgpu_vmid_mgr *id_mgr = &adev->vm_manager.id_mgr[vmhub]; 402 struct amdgpu_vmid *idle = NULL; 403 struct amdgpu_vmid *id = NULL; 404 int r = 0; 405 406 mutex_lock(&id_mgr->lock); 407 r = amdgpu_vmid_grab_idle(vm, ring, sync, &idle); 408 if (r || !idle) 409 goto error; 410 411 if (vm->reserved_vmid[vmhub]) { 412 r = amdgpu_vmid_grab_reserved(vm, ring, sync, fence, job, &id); 413 if (r || !id) 414 goto error; 415 } else { 416 r = amdgpu_vmid_grab_used(vm, ring, sync, fence, job, &id); 417 if (r) 418 goto error; 419 420 if (!id) { 421 /* Still no ID to use? Then use the idle one found earlier */ 422 id = idle; 423 424 /* Remember this submission as user of the VMID */ 425 r = amdgpu_sync_fence(&id->active, fence); 426 if (r) 427 goto error; 428 429 id->flushed_updates = amdgpu_vm_tlb_seq(vm); 430 job->vm_needs_flush = true; 431 } 432 433 list_move_tail(&id->list, &id_mgr->ids_lru); 434 } 435 436 id->pd_gpu_addr = job->vm_pd_addr; 437 id->owner = vm->immediate.fence_context; 438 439 if (job->vm_needs_flush) { 440 dma_fence_put(id->last_flush); 441 id->last_flush = NULL; 442 } 443 job->vmid = id - id_mgr->ids; 444 job->pasid = vm->pasid; 445 trace_amdgpu_vm_grab_id(vm, ring, job); 446 447 error: 448 mutex_unlock(&id_mgr->lock); 449 return r; 450 } 451 452 int amdgpu_vmid_alloc_reserved(struct amdgpu_device *adev, 453 struct amdgpu_vm *vm, 454 unsigned vmhub) 455 { 456 struct amdgpu_vmid_mgr *id_mgr; 457 struct amdgpu_vmid *idle; 458 int r = 0; 459 460 id_mgr = &adev->vm_manager.id_mgr[vmhub]; 461 mutex_lock(&id_mgr->lock); 462 if (vm->reserved_vmid[vmhub]) 463 goto unlock; 464 if (atomic_inc_return(&id_mgr->reserved_vmid_num) > 465 AMDGPU_VM_MAX_RESERVED_VMID) { 466 DRM_ERROR("Over limitation of reserved vmid\n"); 467 atomic_dec(&id_mgr->reserved_vmid_num); 468 r = -EINVAL; 469 goto unlock; 470 } 471 /* Select the first entry VMID */ 472 idle = list_first_entry(&id_mgr->ids_lru, struct amdgpu_vmid, list); 473 list_del_init(&idle->list); 474 vm->reserved_vmid[vmhub] = idle; 475 mutex_unlock(&id_mgr->lock); 476 477 return 0; 478 unlock: 479 mutex_unlock(&id_mgr->lock); 480 return r; 481 } 482 483 void amdgpu_vmid_free_reserved(struct amdgpu_device *adev, 484 struct amdgpu_vm *vm, 485 unsigned vmhub) 486 { 487 struct amdgpu_vmid_mgr *id_mgr = &adev->vm_manager.id_mgr[vmhub]; 488 489 mutex_lock(&id_mgr->lock); 490 if (vm->reserved_vmid[vmhub]) { 491 list_add(&vm->reserved_vmid[vmhub]->list, 492 &id_mgr->ids_lru); 493 vm->reserved_vmid[vmhub] = NULL; 494 atomic_dec(&id_mgr->reserved_vmid_num); 495 } 496 mutex_unlock(&id_mgr->lock); 497 } 498 499 /** 500 * amdgpu_vmid_reset - reset VMID to zero 501 * 502 * @adev: amdgpu device structure 503 * @vmhub: vmhub type 504 * @vmid: vmid number to use 505 * 506 * Reset saved GDW, GWS and OA to force switch on next flush. 507 */ 508 void amdgpu_vmid_reset(struct amdgpu_device *adev, unsigned vmhub, 509 unsigned vmid) 510 { 511 struct amdgpu_vmid_mgr *id_mgr = &adev->vm_manager.id_mgr[vmhub]; 512 struct amdgpu_vmid *id = &id_mgr->ids[vmid]; 513 514 mutex_lock(&id_mgr->lock); 515 id->owner = 0; 516 id->gds_base = 0; 517 id->gds_size = 0; 518 id->gws_base = 0; 519 id->gws_size = 0; 520 id->oa_base = 0; 521 id->oa_size = 0; 522 mutex_unlock(&id_mgr->lock); 523 } 524 525 /** 526 * amdgpu_vmid_reset_all - reset VMID to zero 527 * 528 * @adev: amdgpu device structure 529 * 530 * Reset VMID to force flush on next use 531 */ 532 void amdgpu_vmid_reset_all(struct amdgpu_device *adev) 533 { 534 unsigned i, j; 535 536 for (i = 0; i < AMDGPU_MAX_VMHUBS; ++i) { 537 struct amdgpu_vmid_mgr *id_mgr = 538 &adev->vm_manager.id_mgr[i]; 539 540 for (j = 1; j < id_mgr->num_ids; ++j) 541 amdgpu_vmid_reset(adev, i, j); 542 } 543 } 544 545 /** 546 * amdgpu_vmid_mgr_init - init the VMID manager 547 * 548 * @adev: amdgpu_device pointer 549 * 550 * Initialize the VM manager structures 551 */ 552 void amdgpu_vmid_mgr_init(struct amdgpu_device *adev) 553 { 554 unsigned i, j; 555 556 for (i = 0; i < AMDGPU_MAX_VMHUBS; ++i) { 557 struct amdgpu_vmid_mgr *id_mgr = 558 &adev->vm_manager.id_mgr[i]; 559 560 mutex_init(&id_mgr->lock); 561 INIT_LIST_HEAD(&id_mgr->ids_lru); 562 atomic_set(&id_mgr->reserved_vmid_num, 0); 563 564 /* manage only VMIDs not used by KFD */ 565 id_mgr->num_ids = adev->vm_manager.first_kfd_vmid; 566 567 /* skip over VMID 0, since it is the system VM */ 568 for (j = 1; j < id_mgr->num_ids; ++j) { 569 amdgpu_vmid_reset(adev, i, j); 570 amdgpu_sync_create(&id_mgr->ids[j].active); 571 list_add_tail(&id_mgr->ids[j].list, &id_mgr->ids_lru); 572 } 573 } 574 } 575 576 /** 577 * amdgpu_vmid_mgr_fini - cleanup VM manager 578 * 579 * @adev: amdgpu_device pointer 580 * 581 * Cleanup the VM manager and free resources. 582 */ 583 void amdgpu_vmid_mgr_fini(struct amdgpu_device *adev) 584 { 585 unsigned i, j; 586 587 for (i = 0; i < AMDGPU_MAX_VMHUBS; ++i) { 588 struct amdgpu_vmid_mgr *id_mgr = 589 &adev->vm_manager.id_mgr[i]; 590 591 mutex_destroy(&id_mgr->lock); 592 for (j = 0; j < AMDGPU_NUM_VMID; ++j) { 593 struct amdgpu_vmid *id = &id_mgr->ids[j]; 594 595 amdgpu_sync_free(&id->active); 596 dma_fence_put(id->last_flush); 597 dma_fence_put(id->pasid_mapping); 598 } 599 } 600 } 601